I. Overview of C95400 Copper Alloy C95400 copper alloy is a widely used metallic material across numerous fields. It belongs to the copper alloy family, which ...
Copper alloys are commonly used in the manufacture of mechanical components due to their excellent electrical conductivity, thermal conductivity, and corrosion ...
Graphite bronze bushings are self-lubricating components widely used in a variety of mechanical and industrial applications. They combine the durability of bron...
In many industrial and mechanical applications, the choice between grease bearings and oil bearings significantly impacts the performance, durability, and maint...
The excellent performance of the combination of high-strength brass and graphite in terms of wear resistance, high-temperature resistance, corrosion resistance,...
As the name suggests, high-strength brass is a type of brass with high mechanical properties. The term originates from the common designation in Japan for the C...
In many industrial and mechanical applications, the need for reliable, low-maintenance components is constant. Among these components, oil-free bearings, also k...
I. Structural and Design Features Flanged (Stop-Collar) Design Flanged copper bushings are equipped with a flange structure at the end, which restricts axial ...
Mining machinery operates in demanding environments with high levels of dust, heavy impact loads, and exposure to corrosive substances. Traditional bearings oft...
Graphite bronze plates are widely used in various industrial applications requiring low friction, wear resistance, and reliable operation under heavy loads or h...
Construction machinery operates in extreme environments characterized by high impact loads, heavy dust, and wet, muddy conditions. Traditional bearings frequent...
Metallurgical machinery operates under extreme conditions of high temperature, heavy loads, and severe dust contamination. Traditional lubricated bearings frequ...
We offer a wide range of oil-free bearing solutions covering all series on the market.